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10 battery 1.5v  lr14 c (r14 1.5v) battery alkalines power supply C, AM2, LR14, 14A, E93, MN1400, 814, 4014 View larger

10 battery 1.5v lr14 c (r14 1.5v) battery alkalines power supply C, AM2, LR14, 14A, E93, MN1400, 814, 4014

Formats compatibles : C, AM2, LR14, 14A, E93, MN1400, 814, 4014. Spécifications tension nom.: 1.5V capacité typ.: 7800mAh IEC: LR14 format: C autres: AM2, Baby, MN1400, E93, 4014 dimensions:

$8.79

Instead of $9.26

Delivery expected from 12/11/2019

24 Items

Quantity
Price
5
$7.68
10
$7.44
20
$7.05
50
$6.66
100
$6.27
200
$5.88
500
$5.48
1000
$5.09

R14PX10

Pack content

10 x Zinc carbon c r14 1.5v 3200mah r14p

Specifications

  • nom. voltage: 1.5V
  • typ. capacity: 3200mAh
  • IEC: R14
  • format: C
  • others: UM2, 3714

Description


Supported formats: C, AM2, LR14, 14A, E93, MN1400, 814, 4014. Specification

nom.: 1.5V
capacity typ.: 7800mAh
IEC: LR14
Format: C
other: AM2, Baby, MN1400, E93, 4014
dimensions: O26 x 50.2mm
Packaging: 2 blister batteries

A battery, it is often assumed that it is the electricity box. In fact, it is rather a suction pressure pump that circulates the electrons in an electric circuit connected to the battery terminals.
To understand how the alkaline battery and put the electrons in motion, open an alkaline battery, for example.
Outside, an envelope, often plastic, insulating door advertising various inscriptions.
Below, a boîtieren steel is connected to the marked +. In contact with the envelope of the alkaline battery, a gelatinous paste contains a black powder is manganese dioxide, a compound produced industrially, which contains, as its name suggests, oxygen atoms and atoms Manganese: they are in a particular chemical that makes them hungry for electrons are said to be ionized. They make up half of the suction pump. More in the center, a piece of paper between the manganese dioxide from a second mixture, which contains powder of zinc and potassium. Zinc metal atoms can lose electrons so they are part of the pump pressure pump. Suppose manganese dioxide and zinc metal are simply juxtaposed. The electrons created during the chemical reaction pass directly zinc manganese, without flowing into the electrical appliance. Paper, and potash where zinc is dispersed, are there to prevent this circulation.
The electrons must pass through the appliance which is connected to the + and - pole.
The electric current produced by the battery, that is: a flow of electrons, due to a suction of a side and a thrust of the other.
The flow of electrons continues until all reagents: when all the atoms that constitute the zinc powder have lost electrons they could lose, or when the manganese atoms have captured all the electrons they could capture, chemical reaction ceases.
The alkaline battery can no longer provide electricity. Worn, and must be changed.

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